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Highly (001)-textured p-type WSe2 Thin Films as Efficient Large-Area Photocathodes for Solar Hydrogen Evolution

机译:具有高(001)结构的p型WSe2薄膜作为有效的大面积光电阴极可用于太阳能制氢

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摘要

Highly (001)-textured, photoactive WSe2 thin films have been prepared by an amorphous solid-liquid-crystalline solid process promoted by palladium. By increasing the thickness of the Pd promoter film (≥10 nm) the structure and texture of the WSe2 films can be improved significantly. However, these as-crystallized WSe2 films are only weakly photoactive in a 0.5 М H2SO4 electrolyte under AM 1.5 solar irradiation which we attribute to an inefficient photogenerated charge transfer across the WSe2/electrolyte interface via the prevailing van der Waals planes of the WSe2 crystallites. In this work photochemically deposited platinum on the p-type WSe2 photocathode is used for an efficient electron transfer thus inducing the hydrogen evolution reaction. Upon illuminating the WSe2 photocathodes in a Pt-ion containing electrolyte, the photogenerated electrons reduce Pt+ to Pt leading to the precipitation of Pt islands, preferentially at edge steps of the WSe2, i.e. at the grain boundaries of the WSe2 crystallites. The increasing amount of Pt islands at the grain boundaries linearly enhances the photocurrent density up to 2.5 mA cm−2 at 0 VRHE in sulfuric acid, the highest reported value up to now for WSe2 thin films.
机译:通过钯促进的无定形固-液-固固相法制备了高(001)结构的光敏WSe2薄膜。通过增加Pd促进剂膜的厚度(≥10nm),可以显着改善WSe2膜的结构和织构。然而,这些结晶态的WSe2薄膜仅在AM 1.5太阳辐射下在0.5МH2SO4电解质中具有弱光敏性,这归因于通过WSe2晶体的主要范德华平面穿过WSe2 /电解质界面的光生电荷转移效率低下。在这项工作中,将光化学沉积在p型WSe2光电阴极上的铂用于有效的电子转移,从而引发氢释放反应。在含Pt离子的电解质中照亮WSe2光电阴极后,光生电子将Pt + 还原为Pt,导致Pt岛析出,优先在WSe2的边缘台阶处,即在WSe2晶体。在硫酸中0 VRHE时,晶界处Pt岛数量的增加线性提高了光电流密度,直至2.5 mA cm -2 ,这是迄今为止WSe2薄膜的最高报道值。

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